Skip to product information
10 people are looking at this!

Creality Halot-X1 Resin Printer Auto Feeder Unit

Creality Halot-X1 Resin Printer Auto Feeder Unit

Regular price R 1,990.00
Regular price R 2,500.00 Sale price R 1,990.00
Save 20% Sold out

Fast Shipping

Secure Checkout


Unfortunately this item is sold-out!

Halot-X1 Resin Printer Auto Feeder Unit – Smart Resin Management

The Halot-X1 Resin Printer Auto Feeder Unit (AFU) is an intelligent accessory designed to enhance your resin 3D printing experience. Seamlessly integrating with the Halot-X1 printer, the AFU automates resin handling, ensuring consistent material flow and reducing manual intervention.

Key Features & Benefits

Automated Resin Feeding
The AFU automatically refills the resin vat during printing, preventing interruptions and ensuring uninterrupted print jobs.

Heated Resin Feed
Maintains resin temperatures between 30–45°C, optimising flow and reducing viscosity for consistent printing performance.

RFID Material Identification
Utilizes RFID technology to identify resin types and adjust settings accordingly, ensuring compatibility and optimal print quality.

Laser Sensing Distance Measurement
Employs laser sensors to monitor resin levels and adjust feeding rates, maintaining consistent material supply.

Resin Bottle Residual Detection
Detects remaining resin in bottles, alerting users when it's time to replace or refill, preventing dry runs.

Failure Detection System
Monitors the feeding process for potential issues, providing alerts to prevent print failures and material wastage.

Easy Integration
Designed for seamless compatibility with the Halot-X1 printer, the AFU is straightforward to install and operate.


Why Choose the Halot-X1 Resin Printer Auto Feeder Unit?

The Halot-X1 Resin Printer Auto Feeder Unit streamlines the resin printing process, reducing manual tasks and enhancing print reliability. Ideal for professionals and enthusiasts seeking efficient and consistent 3D printing workflows, the AFU ensures high-quality results with minimal intervention.

View full details